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用于评估带瓣支架的顺应性人体主动脉根部的快速成型

Rapid prototyping of compliant human aortic roots for assessment of valved stents.

作者信息

Kalejs Martins, von Segesser Ludwig Karl

机构信息

Department of Cardio-Vascular Surgery, Centre Hospitalier Universitaire Vaudois, CHUV, Lausanne, Lausanne, Switzerland.

出版信息

Interact Cardiovasc Thorac Surg. 2009 Feb;8(2):182-6. doi: 10.1510/icvts.2008.194134. Epub 2008 Nov 26.

Abstract

Adequate in-vitro training in valved stents deployment as well as testing of the latter devices requires compliant real-size models of the human aortic root. The casting methods utilized up to now are multi-step, time consuming and complicated. We pursued a goal of building a flexible 3D model in a single-step procedure. We created a precise 3D CAD model of a human aortic root using previously published anatomical and geometrical data and printed it using a novel rapid prototyping system developed by the Fab@Home project. As a material for 3D fabrication we used common house-hold silicone and afterwards dip-coated several models with dispersion silicone one or two times. To assess the production precision we compared the size of the final product with the CAD model. Compliance of the models was measured and compared with native porcine aortic root. Total fabrication time was 3 h and 20 min. Dip-coating one or two times with dispersion silicone if applied took one or two extra days, respectively. The error in dimensions of non-coated aortic root model compared to the CAD design was <3.0% along X, Y-axes and 4.1% along Z-axis. Compliance of a non-coated model as judged by the changes of radius values in the radial direction by 16.39% is significantly different (P<0.001) from native aortic tissue--23.54% at the pressure of 80-100 mmHg. Rapid prototyping of compliant, life-size anatomical models with the Fab@Home 3D printer is feasible--it is very quick compared to previous casting methods.

摘要

在带瓣支架植入方面进行充分的体外训练以及对这些装置进行测试需要符合人体主动脉根部实际尺寸的模型。到目前为止所采用的铸造方法是多步骤的,耗时且复杂。我们追求的目标是通过单步程序构建一个灵活的三维模型。我们利用先前发表的解剖学和几何学数据创建了一个精确的人体主动脉根部三维计算机辅助设计(CAD)模型,并使用由Fab@Home项目开发的新型快速成型系统将其打印出来。作为三维制造的材料,我们使用了普通家用硅胶,之后用分散硅胶对几个模型进行了一到两次浸涂。为了评估生产精度,我们将最终产品的尺寸与CAD模型进行了比较。测量了模型的顺应性并与天然猪主动脉根部进行了比较。总制作时间为3小时20分钟。如果进行浸涂,用分散硅胶浸涂一到两次分别需要额外一到两天的时间。与CAD设计相比,未涂层主动脉根部模型在X、Y轴方向的尺寸误差小于3.0%,在Z轴方向为4.1%。通过径向半径值变化判断,未涂层模型的顺应性为16.39%,与天然主动脉组织在80 - 100 mmHg压力下的顺应性23.54%相比有显著差异(P<0.001)。使用Fab@Home三维打印机快速成型符合实际尺寸的解剖学模型是可行的——与以前的铸造方法相比,这非常迅速。

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